/* The RCS version of hdfgen.pl used to create this file is: */ /* $Id: hdfgen.pl,v 1.48 1998/09/29 18:21:45 steves Exp */ /* The include file used to create this file is: */ /* $Id: s3_cpha.h,v 1.2 1997/05/06 19:09:53 jeff Exp */ #include "s3_cpha.h" #include "mfhdf.h" #include "df.h" int32 vgrp_id_s3_cpha; static int32 vdata_id_s3_cpha; static int32 sds_id_s3_cpha1, sds_id_s3_cpha2, sds_id_s3_cpha3, sds_id_s3_cpha4; /* 1021 is the size of s3_cpha.h + 1 added line */ char Vgrp_descrp_cpha[1021]; /****---- init create function ----****/ int32 init_cr_s3_cpha(int32 hdf_fp, int32 sd_id, int32 an_id, char *classname) { int32 retval=0; int32 vgrp_ref_w; int32 ann_id_w; int32 sds_ref_w1, sds_ref_w2, sds_ref_w3, sds_ref_w4; int32 dim_sizes[3]; int32 rank; int32 wr_Vgrp_desc_s3_cpha(); void print_s3_cpha_error(); /* Setup a Vgroup */ if ((vgrp_id_s3_cpha = Vattach(hdf_fp, -1, "w"))==FAIL) { print_s3_cpha_error("init_cr_s3_cpha -> Vattach: Couldn't create Vgroup"); retval = -1; } Vsetname(vgrp_id_s3_cpha, "VG_cpha"); Vsetclass(vgrp_id_s3_cpha, "VG_S3_CPHA"); /* Get the Vgroup reference */ if ((vgrp_ref_w = Vfind(hdf_fp, "VG_cpha" )) ==FAIL) { print_s3_cpha_error("init_cr_s3_cpha -> Vfind: Couldn't get Vgrp reference"); retval = -1; } /* Add a description to the Vgroup */ wr_Vgrp_desc_s3_cpha(Vgrp_descrp_cpha); if ((ann_id_w = ANcreate(an_id, DFTAG_VG, vgrp_ref_w, AN_DATA_DESC)) ==FAIL) { print_s3_cpha_error("init_cr_s3_cpha -> ANcreate: Can't create Vgrp description"); retval = -1; } if ((ANwriteann(ann_id_w, Vgrp_descrp_cpha, sizeof(Vgrp_descrp_cpha))) ==FAIL) { print_s3_cpha_error("init_cr_s3_cpha -> ANwriteann: Can't write Vgrp description"); retval = -1; } ANendaccess(ann_id_w); /* Setup a Vdata */ if ((vdata_id_s3_cpha = VSattach(hdf_fp, -1, "w")) ==FAIL) { print_s3_cpha_error("init_cr_s3_cpha -> VSattach: Couldn't attach to Vdata"); retval = -1; } VSsetname(vdata_id_s3_cpha, "cpha"); VSsetclass(vdata_id_s3_cpha, classname); /* Insert the Vdata into the Vgroup */ if ((Vinsert(vgrp_id_s3_cpha, vdata_id_s3_cpha)) ==FAIL) { print_s3_cpha_error("init_cr_s3_cpha -> Vinsert: Couldn't insert Vdata into Vgroup"); retval = -1; } /* Define the fields in the Vdata */ if (VSfdefine(vdata_id_s3_cpha, "sctime_readout", DFNT_UINT32, (1) )) { print_s3_cpha_error("init_cr_s3_cpha -> VSfdefine: Couldn't define sctime_readout"); retval = -1; } if (VSfdefine(vdata_id_s3_cpha, "sctime_collection", DFNT_UINT32, (1) )) { print_s3_cpha_error("init_cr_s3_cpha -> VSfdefine: Couldn't define sctime_collection"); retval = -1; } if (VSfdefine(vdata_id_s3_cpha, "QAC", DFNT_UINT32, (1) )) { print_s3_cpha_error("init_cr_s3_cpha -> VSfdefine: Couldn't define QAC"); retval = -1; } if (VSfdefine(vdata_id_s3_cpha, "concat", DFNT_UINT8, (1) )) { print_s3_cpha_error("init_cr_s3_cpha -> VSfdefine: Couldn't define concat"); retval = -1; } if (VSfdefine(vdata_id_s3_cpha, "elements", DFNT_UINT32, (1) )) { print_s3_cpha_error("init_cr_s3_cpha -> VSfdefine: Couldn't define elements"); retval = -1; } if (VSsetfields(vdata_id_s3_cpha,"sctime_readout, sctime_collection, QAC, concat, elements")){ print_s3_cpha_error("init_cr_s3_cpha -> VSsetfields: Couldn't set fields"); retval = -1; } /* Create SDS's and add to the Vgroup */ rank = 3; dim_sizes[0] = SD_UNLIMITED; dim_sizes[1] = SWICS_PHA_CYCLEN; dim_sizes[2] = SWICS_PHA_CYCPERSR; if((sds_id_s3_cpha1 = SDcreate(sd_id, "cpha_range", DFNT_UINT8, rank, dim_sizes)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> SDcreate: Couldn't create cpha_range"); /* Add SDS to Vgroup */ if((sds_ref_w1 = SDidtoref(sds_id_s3_cpha1)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> SDidtoref: Couldn't get ref for cpha_range"); if((Vaddtagref(vgrp_id_s3_cpha, DFTAG_NDG, sds_ref_w1)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> Vaddtagref: Couldn't add SDS cpha_range to Vgrp"); rank = 3; dim_sizes[0] = SD_UNLIMITED; dim_sizes[1] = SWICS_PHA_CYCLEN; dim_sizes[2] = SWICS_PHA_CYCPERSR; if((sds_id_s3_cpha2 = SDcreate(sd_id, "cpha_sector", DFNT_UINT8, rank, dim_sizes)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> SDcreate: Couldn't create cpha_sector"); /* Add SDS to Vgroup */ if((sds_ref_w2 = SDidtoref(sds_id_s3_cpha2)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> SDidtoref: Couldn't get ref for cpha_sector"); if((Vaddtagref(vgrp_id_s3_cpha, DFTAG_NDG, sds_ref_w2)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> Vaddtagref: Couldn't add SDS cpha_sector to Vgrp"); rank = 3; dim_sizes[0] = SD_UNLIMITED; dim_sizes[1] = SWICS_PHA_CYCLEN; dim_sizes[2] = SWICS_PHA_CYCPERSR; if((sds_id_s3_cpha3 = SDcreate(sd_id, "cpha_energy", DFNT_UINT16, rank, dim_sizes)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> SDcreate: Couldn't create cpha_energy"); /* Add SDS to Vgroup */ if((sds_ref_w3 = SDidtoref(sds_id_s3_cpha3)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> SDidtoref: Couldn't get ref for cpha_energy"); if((Vaddtagref(vgrp_id_s3_cpha, DFTAG_NDG, sds_ref_w3)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> Vaddtagref: Couldn't add SDS cpha_energy to Vgrp"); rank = 3; dim_sizes[0] = SD_UNLIMITED; dim_sizes[1] = SWICS_PHA_CYCLEN; dim_sizes[2] = SWICS_PHA_CYCPERSR; if((sds_id_s3_cpha4 = SDcreate(sd_id, "cpha_time", DFNT_UINT16, rank, dim_sizes)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> SDcreate: Couldn't create cpha_time"); /* Add SDS to Vgroup */ if((sds_ref_w4 = SDidtoref(sds_id_s3_cpha4)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> SDidtoref: Couldn't get ref for cpha_time"); if((Vaddtagref(vgrp_id_s3_cpha, DFTAG_NDG, sds_ref_w4)) == FAIL) print_s3_cpha_error("init_cr_s3_cpha -> Vaddtagref: Couldn't add SDS cpha_time to Vgrp"); return(retval); } /* Included for backwards compatibility */ int32 init_wr_s3_cpha(int32 hdf_fp, int32 sd_id, int32 an_id, char *classname) { return( init_cr_s3_cpha(hdf_fp, sd_id, an_id, classname) ); } /******---- write function ----******/ int32 write_s3_cpha(struct cpha cpha_struc, int32 recnum) { int32 start[3], edges[3]; int32 retval = 0; uint8 *odata; static int32 recnum_wr=0; void print_s3_cpha_error(); void pack_s3_cpha(); odata = (uint8 *) malloc(sizeof(struct cpha)); pack_s3_cpha(odata, &cpha_struc); if(recnum!=-1) { recnum_wr=recnum; if(VSseek(vdata_id_s3_cpha, recnum)==-1) { print_s3_cpha_error("write_s3_cpha -> VSseek: error."); retval = -1; } } if(VSwrite(vdata_id_s3_cpha, (uint8 *)odata, 1, FULL_INTERLACE) == -1) print_s3_cpha_error("write_s3_cpha -> VSwrite: Couldn't write data."); start[0] = recnum_wr++; start[1] = 0; start[2] = 0; edges[0] = 1; edges[1] = SWICS_PHA_CYCLEN; edges[2] = SWICS_PHA_CYCPERSR; if (SDwritedata(sds_id_s3_cpha1,start,NULL,edges, (VOIDP)(cpha_struc.range)) ==FAIL) print_s3_cpha_error("write_s3_cpha -> SDwritedata: Problem writing range data."); edges[1] = SWICS_PHA_CYCLEN; edges[2] = SWICS_PHA_CYCPERSR; if (SDwritedata(sds_id_s3_cpha2,start,NULL,edges, (VOIDP)(cpha_struc.sector)) ==FAIL) print_s3_cpha_error("write_s3_cpha -> SDwritedata: Problem writing sector data."); edges[1] = SWICS_PHA_CYCLEN; edges[2] = SWICS_PHA_CYCPERSR; if (SDwritedata(sds_id_s3_cpha3,start,NULL,edges, (VOIDP)(cpha_struc.energy)) ==FAIL) print_s3_cpha_error("write_s3_cpha -> SDwritedata: Problem writing energy data."); edges[1] = SWICS_PHA_CYCLEN; edges[2] = SWICS_PHA_CYCPERSR; if (SDwritedata(sds_id_s3_cpha4,start,NULL,edges, (VOIDP)(cpha_struc.time)) ==FAIL) print_s3_cpha_error("write_s3_cpha -> SDwritedata: Problem writing time data."); memset(&cpha_struc, 0, sizeof(struct cpha)); free(odata); return(retval); } /*---- close write function ----*/ void close_wr_s3_cpha() { VSdetach(vdata_id_s3_cpha); Vdetach(vgrp_id_s3_cpha); SDendaccess(sds_id_s3_cpha1); SDendaccess(sds_id_s3_cpha2); SDendaccess(sds_id_s3_cpha3); SDendaccess(sds_id_s3_cpha4); } /*---- init access function ----*/ int32 init_acc_s3_cpha(int32 hdf_fp, int32 sd_id, char *access_mode) { static int32 sds_index1; static int32 sds_index2; static int32 sds_index3; static int32 sds_index4; int32 vdata_ref; int32 num_rec; void print_s3_cpha_error(); if((sds_index1=SDnametoindex(sd_id, "cpha_range" )) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> SDnametoindex: Couldn't find cpha_range"); return(-1); } if((sds_id_s3_cpha1=SDselect(sd_id, sds_index1)) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> SDselect: Couldn't select sds_index1"); return(-1); } if((sds_index2=SDnametoindex(sd_id, "cpha_sector" )) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> SDnametoindex: Couldn't find cpha_sector"); return(-1); } if((sds_id_s3_cpha2=SDselect(sd_id, sds_index2)) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> SDselect: Couldn't select sds_index2"); return(-1); } if((sds_index3=SDnametoindex(sd_id, "cpha_energy" )) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> SDnametoindex: Couldn't find cpha_energy"); return(-1); } if((sds_id_s3_cpha3=SDselect(sd_id, sds_index3)) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> SDselect: Couldn't select sds_index3"); return(-1); } if((sds_index4=SDnametoindex(sd_id, "cpha_time" )) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> SDnametoindex: Couldn't find cpha_time"); return(-1); } if((sds_id_s3_cpha4=SDselect(sd_id, sds_index4)) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> SDselect: Couldn't select sds_index4"); return(-1); } if ((vdata_ref = VSfind(hdf_fp, "cpha")) <= 0 ) { print_s3_cpha_error("init_acc_s3_cpha -> VSfind: Found no vdata of specified type."); return(0); } if ((vdata_id_s3_cpha = VSattach(hdf_fp, vdata_ref, access_mode)) ==FAIL) { print_s3_cpha_error("init_acc_s3_cpha -> VSattach: Couldn't attach to hdf file."); return(-1); } VSinquire(vdata_id_s3_cpha, &num_rec, NULL, NULL, NULL, NULL); if (num_rec == 0) { return(0); } if (VSsetfields(vdata_id_s3_cpha,"sctime_readout, sctime_collection, QAC, concat, elements")) { print_s3_cpha_error("init_acc_s3_cpha -> VSsetfields: Unable to set fields."); return(-1); } return(num_rec); } /* Included for backwards compatability */ int32 init_rd_s3_cpha(int32 hdf_fp, int32 sd_id, char *access_mode) { return ( init_acc_s3_cpha(hdf_fp, sd_id, access_mode) ); } /******---- read function ----******/ int32 read_s3_cpha(struct cpha *cpha_struc, int32 recnum_rd) { int32 start[3], edges[3]; int32 maxrec; static int32 last_recnum = -1; int32 retval = 0; uint8 *odata; void print_s3_cpha_error(); void unpack_s3_cpha(); if(recnum_rd==-1) recnum_rd=last_recnum+1; start[0] = recnum_rd; start[1] = 0; start[2] = 0; edges[0] = 1; odata = (uint8 *) malloc(sizeof(struct cpha)); VSinquire(vdata_id_s3_cpha, &maxrec, NULL, NULL, NULL, NULL); if (recnum_rd >= maxrec) return(-1); if (recnum_rd != last_recnum+1) if (VSseek(vdata_id_s3_cpha, recnum_rd)==FAIL) { print_s3_cpha_error("read_s3_cpha -> VSseek unsuccessful"); retval = -1; } last_recnum = recnum_rd; edges[1] = SWICS_PHA_CYCLEN; edges[2] = SWICS_PHA_CYCPERSR; if(SDreaddata(sds_id_s3_cpha1,start,NULL,edges, (VOIDP)(cpha_struc->range )) ==FAIL) { print_s3_cpha_error("read_s3_cpha -> SDreaddata: Couldn't read range"); retval = -1; } edges[1] = SWICS_PHA_CYCLEN; edges[2] = SWICS_PHA_CYCPERSR; if(SDreaddata(sds_id_s3_cpha2,start,NULL,edges, (VOIDP)(cpha_struc->sector )) ==FAIL) { print_s3_cpha_error("read_s3_cpha -> SDreaddata: Couldn't read sector"); retval = -1; } edges[1] = SWICS_PHA_CYCLEN; edges[2] = SWICS_PHA_CYCPERSR; if(SDreaddata(sds_id_s3_cpha3,start,NULL,edges, (VOIDP)(cpha_struc->energy )) ==FAIL) { print_s3_cpha_error("read_s3_cpha -> SDreaddata: Couldn't read energy"); retval = -1; } edges[1] = SWICS_PHA_CYCLEN; edges[2] = SWICS_PHA_CYCPERSR; if(SDreaddata(sds_id_s3_cpha4,start,NULL,edges, (VOIDP)(cpha_struc->time )) ==FAIL) { print_s3_cpha_error("read_s3_cpha -> SDreaddata: Couldn't read time"); retval = -1; } if(VSread(vdata_id_s3_cpha, (uint8 *)odata, 1, FULL_INTERLACE) ==FAIL) { print_s3_cpha_error("read_s3_cpha -> VSread: Couldn't read data."); retval = -1; } unpack_s3_cpha(odata, cpha_struc); free(odata); return(retval); } /*---- close read function ----*/ void close_rd_s3_cpha() { VSdetach(vdata_id_s3_cpha); SDendaccess(sds_id_s3_cpha1); SDendaccess(sds_id_s3_cpha2); SDendaccess(sds_id_s3_cpha3); SDendaccess(sds_id_s3_cpha4); } /*---- Read V group description, function ----*/ void rd_Vgrp_desc_s3_cpha(int32 hdf_fp, int32 an_id) { int32 ann_id_r; int32 num_ann; int32 *ann_list; int32 vgrp_ref_r; void print_s3_cpha_error(); /* Get the Vgroup reference */ if ((vgrp_ref_r = Vfind(hdf_fp, "VG_cpha" )) ==FAIL) print_s3_cpha_error("rd_Vgrp_s3_cpha -> Vfind: Couldn't get Vgrp reference."); if ((num_ann = ANnumann(an_id, AN_DATA_DESC, DFTAG_VG, vgrp_ref_r)) ==FAIL) print_s3_cpha_error("rd_Vgrp_s3_cpha -> ANnumann: Couldn't get number of annotations."); ann_list = HDmalloc(num_ann * sizeof(int32)); if ((num_ann = ANannlist(an_id, AN_DATA_DESC, DFTAG_VG, vgrp_ref_r, ann_list)) ==FAIL) print_s3_cpha_error("rd_Vgrp_s3_cpha -> ANannlist: Couldn't"); if ((ann_id_r = ANselect(an_id, (num_ann-1), AN_DATA_DESC)) ==FAIL) print_s3_cpha_error("rd_Vgrp_s3_cpha -> ANselect: Couldn't"); if (ANreadann(ann_id_r, Vgrp_descrp_cpha, HDstrlen(Vgrp_descrp_cpha)) ==FAIL) print_s3_cpha_error("rd_Vgrp_s3_cpha -> ANreadann: Couldn't"); printf("AN: %s\n", Vgrp_descrp_cpha); ANendaccess(ann_id_r); ANend(an_id); } /*---- error function ----*/ void print_s3_cpha_error(int8 *mess) { fprintf(stderr,"\nERROR in hdf_swics_cpha.c -> %s\n", mess); HEprint(stderr, 0); } /*---- pack function ----*/ void pack_s3_cpha(uint8 *data, struct cpha *cpha_ptr) { int32 ptr=0; memcpy(data+ptr, &cpha_ptr->sctime_readout, ((4)*(1)) ); ptr+= ((4)*(1)); memcpy(data+ptr, &cpha_ptr->sctime_collection, ((4)*(1)) ); ptr+= ((4)*(1)); memcpy(data+ptr, &cpha_ptr->QAC, ((4)*(1)) ); ptr+= ((4)*(1)); memcpy(data+ptr, &cpha_ptr->concat, ((1)*(1)) ); ptr+= ((1)*(1)); memcpy(data+ptr, &cpha_ptr->elements, ((4)*(1)) ); ptr+= ((4)*(1)); } /*---- unpack function ----*/ void unpack_s3_cpha(uint8 *data, struct cpha *cpha_ptr) { int32 ptr=0; memcpy(&cpha_ptr->sctime_readout, data+ptr, ((4)*(1)) ); ptr+= ((4)*(1)); memcpy(&cpha_ptr->sctime_collection, data+ptr, ((4)*(1)) ); ptr+= ((4)*(1)); memcpy(&cpha_ptr->QAC, data+ptr, ((4)*(1)) ); ptr+= ((4)*(1)); memcpy(&cpha_ptr->concat, data+ptr, ((1)*(1)) ); ptr+= ((1)*(1)); memcpy(&cpha_ptr->elements, data+ptr, ((4)*(1)) ); ptr+= ((4)*(1)); } int32 get_vgrp_id_s3_cpha() {return(vgrp_id_s3_cpha);} /*---- V group description function ----*/ int32 wr_Vgrp_desc_s3_cpha(char *wr_strval) { strcpy(wr_strval, "The file 's3_cpha.h' is shown below, it was used to create the data in the Vgroup named 'VG_cpha'.\n\n"); strcat(wr_strval,"/* Id: s3_cpha.h,v 1.2 1997/05/06 19:09:53 jeff Exp $ */\n"); strcat(wr_strval,"#include \"hdfi.h\"\n"); strcat(wr_strval,"\n"); strcat(wr_strval,"#define SWICS_PHA_CYCLEN 194 \n"); strcat(wr_strval,"#define SWICS_PHA_CYCPERSR 60 \n"); strcat(wr_strval,"\n"); strcat(wr_strval,"struct cpha {\n"); strcat(wr_strval," uint32 sctime_readout; /* 32 bit spacecraft time */\n"); strcat(wr_strval," uint32 sctime_collection; /* 32 bit spacecraft time */\n"); strcat(wr_strval," uint32 QAC; /* number of missing frames in this SR*/\n"); strcat(wr_strval," uint8 concat; /* is the number of mpha structs */\n"); strcat(wr_strval," uint32 elements; /* number of pha events */ \n"); strcat(wr_strval,"\n"); strcat(wr_strval," uint8 range[SWICS_PHA_CYCLEN][SWICS_PHA_CYCPERSR];\n"); strcat(wr_strval," uint8 sector[SWICS_PHA_CYCLEN][SWICS_PHA_CYCPERSR];\n"); strcat(wr_strval," uint16 energy[SWICS_PHA_CYCLEN][SWICS_PHA_CYCPERSR];\n"); strcat(wr_strval," uint16 time[SWICS_PHA_CYCLEN][SWICS_PHA_CYCPERSR];\n"); strcat(wr_strval," \n"); strcat(wr_strval,"\n"); strcat(wr_strval,"};\n"); return(0); }